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kc3-lang/gnulib/lib/sha.h

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  • Author : Jim Meyering
    Date : 2000-09-20 08:05:39
    Hash : 9805c056
    Message : *** empty log message ***

  • lib/sha.h
  • /* sha.h - Declaration of functions and datatypes for SHA1 sum computing
       library functions.
    
       Copyright (C) 1999, Scott G. Miller
    */
    
    #ifndef _SHA_H
    # define _SHA_H 1
    
    # include <stdio.h>
    # include "md5.h"
    
    /* Structure to save state of computation between the single steps.  */
    struct sha_ctx
    {
      md5_uint32 A;
      md5_uint32 B;
      md5_uint32 C;
      md5_uint32 D;
      md5_uint32 E;
    
      md5_uint32 total[2];
      md5_uint32 buflen;
      char buffer[128];
    };
    
    
    /* Starting with the result of former calls of this function (or the
       initialization function update the context for the next LEN bytes
       starting at BUFFER.
       It is necessary that LEN is a multiple of 64!!! */
    extern void sha_process_block __P ((const void *buffer, size_t len,
                                struct sha_ctx *ctx));
    
    /* Starting with the result of former calls of this function (or the
       initialization function update the context for the next LEN bytes
       starting at BUFFER.
       It is NOT required that LEN is a multiple of 64.  */
    extern void sha_process_bytes __P((const void *buffer, size_t len,
    				    struct sha_ctx *ctx));
    
    /* Initialize structure containing state of computation. */
    extern void sha_init_ctx __P ((struct sha_ctx *ctx));
    
    /* Process the remaining bytes in the buffer and put result from CTX
       in first 16 bytes following RESBUF.  The result is always in little
       endian byte order, so that a byte-wise output yields to the wanted
       ASCII representation of the message digest.
    
       IMPORTANT: On some systems it is required that RESBUF is correctly
       aligned for a 32 bits value.  */
    extern void *sha_finish_ctx __P ((struct sha_ctx *ctx, void *resbuf));
    
    
    /* Put result from CTX in first 16 bytes following RESBUF.  The result is
       always in little endian byte order, so that a byte-wise output yields
       to the wanted ASCII representation of the message digest.
    
       IMPORTANT: On some systems it is required that RESBUF is correctly
       aligned for a 32 bits value.  */
    extern void *sha_read_ctx __P ((const struct sha_ctx *ctx, void *resbuf));
    
    
    /* Compute MD5 message digest for bytes read from STREAM.  The
       resulting message digest number will be written into the 16 bytes
       beginning at RESBLOCK.  */
    extern int sha_stream __P ((FILE *stream, void *resblock));
    
    /* Compute MD5 message digest for LEN bytes beginning at BUFFER.  The
       result is always in little endian byte order, so that a byte-wise
       output yields to the wanted ASCII representation of the message
       digest.  */
    extern void *sha_buffer __P ((const char *buffer, size_t len, void *resblock));
    
    #endif